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In situSolution Plasma SynthesisofAmine-Terminated Silane-Modified Carbon Nanoparticles for Efficient Removal of Heavy Metal Ions

机译:在血浆血浆合成胺封端的硅烷改性碳纳米粒子,用于有效去除重金属离子

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In recent years, the presence of heavy metal ions in groundwater and seawater systems has been attracted much attention due to their adverse effects on public health and ecological systems. Therefore, it is necessary to develop various efficient materialsfor removal of heavy metal ions contaminant. Carbon material is the most extensively used in this purpose based on itsinexpensive, high specific surface area, minimal costs, fastwatertransport, as well as its reusability. Nowadays, the researches focused on the development of carbon adsorbents with enhanced adsorption capacity. According to the previous work, it is well?known that the creation of functional group on carbon materials such as amine groups could be used as active site which expectedto enhance the removal of metal ions from aqueous solution. However, these conventional modification methods lead to a complicated solution, high cost, high toxic reagent as well as long time. Solution plasma process is one of the promising techniques which has been applied for the synthesis of carbonaceous materials. This process offers several advantages, for example, simple experimental system, inexpensiveness, short-time operation, and processing at room temperature and atmospheric pressure.
机译:近年来,由于对公共卫生和生态系统的不利影响,地下水和海水系统中重金属离子的存在受到了很大的关注。因此,有必要开发各种有效的材料,从而去除重金属离子污染物。碳材料是基于ITSINEXPERCE,高比表面积,最小成本,FastwaterTransport以及其可重用性的最广泛使用的。如今,研究重点是具有增强的吸附能力的碳吸附剂的发展。根据以前的工作,很好?已知胺基碳材料上的官能团的产生可用作活性位点,该活性位点预计将增强从水溶液中除去金属离子的去除。然而,这些传统的改性方法导致复杂的解决方案,高成本,高毒性试剂以及长时间。溶液等离子体过程是已施加用于合成碳质材料的有希望的技术之一。该过程提供了几种优点,例如简单的实验系统,廉价速度,短时间操作,以及室温和大气压的加工。

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